111-Gb/s POLMUX-RZ-DQPSK transmission over LEAF: Optical versus electrical dispersion compensation
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H. de Waardt | M. Kuschnerov | M.S. Alfiad | D. van den Borne | A. Napoli | T. Wuth | S.L. Jansen | G. Grosso
[1] Kuang-Tsan Wu,et al. Real-time measurements of a 40 Gb/s coherent system. , 2008, Optics express.
[2] M. Kuschnerov,et al. Multi-rate (111-Gb/s, 2x43-Gb/s, and 8x10.7-Gb/s) transmission at 50-GHz channel spacing over 1040-km field-deployed fiber , 2008, 2008 34th European Conference on Optical Communication.
[3] S. Calabro,et al. Polarization interleaving to reduce inter-channel nonlinear penalties in polarization multiplexed transmission , 2005, OFC/NFOEC Technical Digest. Optical Fiber Communication Conference, 2005..
[4] Andrew J. Viterbi,et al. Nonlinear estimation of PSK-modulated carrier phase with application to burst digital transmission , 1983, IEEE Trans. Inf. Theory.
[5] H. de Waardt,et al. Bit pattern dependence in optical DQPSK modulation , 2007 .
[6] A. Kung,et al. Doubly periodic dispersion maps for 10 and 40 Gbit/s ultra-long-haul transmission , 2004 .
[7] B. Lankl,et al. 111-Gb/s POLMUX-RZ-DQPSK transmission over 1140 km of SSMF with 10.7-Gb/s NRZ-OOK neighbours , 2008, 2008 34th European Conference on Optical Communication.
[8] T. Duthel,et al. Coherent Equalization and POLMUX-RZ-DQPSK for Robust 100-GE Transmission , 2008, Journal of Lightwave Technology.